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三种具有氨基酸替换的人细胞色素P450 2E1变体的功能表征

Functional characterization of three human cytochrome p450 2E1 variants with amino acid substitutions.

作者信息

Hanioka N, Tanaka-Kagawa T, Miyata Y, Matsushima E, Makino Y, Ohno A, Yoda R, Jinno H, Ando M

机构信息

Division of Environmental Chemistry, National Institute of Health Sciences, 1-18-1 Kamiyoga, Setagaya-ku, Tokyo 158-8501, Japan.

出版信息

Xenobiotica. 2003 Jun;33(6):575-86. doi: 10.1080/0049825031000086400.

Abstract
  1. Cytochrome p450 (p450) 2E1 is a hepatic enzyme of importance for the metabolism of xenobiotics such as drugs and environmental toxicants. Genetic polymorphisms of CYP2E1 in 5'-flanking and coding regions have been found previously in Caucasian and Chinese populations. 2. In order to investigate the effects of amino acid substitutions on the function of CYP2E1, the enzymes of all known CYP2E1 variants in the coding region (CYP2E1.2, CYP2E1.3 and CYP2E1.4) with Arg76His, Val389Ile and Val179Ile substitutions, respectively, as well as the wild-type CYP2E1 (CYP2E1.1) were expressed in COS-1 cells, and their chlorzoxazone 6-hydroxylation and 4-nitrophenol 2-hydroxylation activities were determined. 3. The protein level of CYP2E1.2 was reduced to 29% compared with that of CYP2E1.1. The profiles of the level of activity relative to CYP2E1.1 for chlorzoxazone 6-hydroxylation (300 microM substrate) and 4-nitrophenol 2-hydroxylation (150 microM substrate) were very similar. 4. Although the K(m) values were not significantly different among wild-type and variant CYP2E1s in any oxidation metabolism, the V(max) and V(max)/K(m) of CYP2E1.2 on the basis of the CYP2E1 protein level were 2.7-3.0-fold higher than those of CYP2E1.1. In contrast, the levels of CYP2E1 protein and catalytic activity of CYP2E1.3 and CYP2E1.4 were not affected by the corresponding amino acid substitutions. 5. The findings suggest that Arg76 is closely associated with the function of CYP2E1, and that the genetic polymorphism of CYP2E1 is one cause of interindividual differences in the toxicity of xenobiotics.
摘要
  1. 细胞色素P450(P450)2E1是一种肝脏酶,对于药物和环境毒物等外源性物质的代谢至关重要。先前在白种人和中国人群中已发现CYP2E1在5'-侧翼和编码区的基因多态性。2. 为了研究氨基酸取代对CYP2E1功能的影响,分别将编码区中所有已知的带有Arg76His、Val389Ile和Val179Ile取代的CYP2E1变体(CYP2E1.2、CYP2E1.3和CYP2E1.4)的酶以及野生型CYP2E1(CYP2E1.1)在COS-1细胞中表达,并测定它们的氯唑沙宗6-羟化和4-硝基苯酚2-羟化活性。3. 与CYP2E1.1相比,CYP2E1.2的蛋白水平降低至29%。氯唑沙宗6-羟化(300微摩尔底物)和4-硝基苯酚2-羟化(150微摩尔底物)相对于CYP2E1.1的活性水平曲线非常相似。4. 尽管在任何氧化代谢中野生型和变体CYP2E1的K(m)值没有显著差异,但基于CYP2E1蛋白水平,CYP2E1.2的V(max)和V(max)/K(m)比CYP2E1.1高2.7 - 3.0倍。相比之下,CYP2E1.3和CYP2E1.4的CYP2E1蛋白水平和催化活性不受相应氨基酸取代的影响。5. 这些发现表明,Arg76与CYP2E1的功能密切相关,并且CYP2E1的基因多态性是外源性物质毒性个体差异的一个原因。

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